Electric power construction operation platform

By designing reinforcement, balance, expansion and drop-proof devices, the problem of poor stability of the power construction operation platform in the slope terrain environment is solved, achieving higher stability, greater storage space and stronger safety.

CN120073549APending Publication Date: 2025-05-30XINJIANG FAST ENERGY TECH CO LTD
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Patent Information

Application Number
CN202510351314.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The existing power construction operation platform has poor stability in slope terrain environments such as mountainous areas and is prone to overturning.

Method used

A power construction operation platform including a platform body, reinforcement device, balance device, expansion device and drop-proof device is designed. The reinforcement device adjusts the angle of the moving base through the telescopic part and the fixed part. The balance device uses the inclination sensor and the one-way screw to adjust the balance of the operating table. The expansion device expands the storage space through the expansion plate and the fence. The anti-falling device uses annular guide rails and elastic pull ropes to prevent the tool from falling.

Benefits of technology

It improves the stability of the power construction operation platform on the slope, avoids rollover, expands storage space, and enhances the safety and use efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an electric power construction operation platform. The electric power construction operation platform comprises a platform main body, two reinforcing devices, a balancing device, an expanding device and an anti-falling device, the platform body comprises a movable base, a shear fork type elevator is arranged at the upper end of the movable base, and an operation table is arranged at the upper end of the shear fork type elevator. By arranging a reinforcing device, when the equipment is located on a slope surface, a locking rod is pulled out, a telescopic mother rod naturally descends, a fixing part makes contact with the ground, a telescopic part slightly inclines towards the outer side, a pedal is treaded through a notch, an insertion rod is inserted into soil, all telescopic child rods and the telescopic mother rod are locked through the locking rod, and a U-shaped handle is rotated; the two-way screw rods are driven to rotate, and then the telescopic part and the fixed part are far away from each other through the moving block, the supporting rod and the connecting block, so that one side of the moving base is supported, the moving base is kept horizontal, the stability of the operation platform for power construction on a slope surface is improved, and rollover is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of electric power construction equipment, and particularly to an electric power construction operation platform. Background Art

[0002] With the development of the times and the necessary requirements of production and life, the electric power project is an essential part of the urbanization process. In order to ensure power supply everywhere in the city, the power lines are often erected densely. When erecting electric wires through utility poles in electric power construction, it is often necessary to assist the construction with construction equipment. When carrying out electric power construction at a certain height, it is necessary to use an operation platform for construction, that is, the operator stands on the operation platform for construction. The traditional method is to build a scaffolding as an isolation construction frame, but using a scaffolding is not safe and the engineering efficiency is poor. Therefore, due to its portability and convenient lifting characteristics, the lifting cloud platform has been widely used in the process of electric power construction and maintenance in recent years.

[0003] In the prior art, conventional fixed elevating platforms are mostly vertically designed and are mainly used for vertical operations on building facades, indoors or flat terrains. Such equipment usually lacks an inclination adjustment mechanism and cannot actively adjust the platform angle on a slope to maintain horizontal. Some high-end mobile elevating platforms are equipped with an automatic leveling system, which can adjust the platform angle through hydraulic or mechanical devices within a certain slope range to keep the working surface horizontal, but its chassis is still parallel to the slope surface, which may cause the body to tip over or shift, resulting in insufficient stability.

[0004] Therefore, we propose an electric power construction operation platform to solve the problem of poor stability of the operation platform for electric power construction in the working environment with a sloping terrain such as mountains in the prior art. Summary of the Invention

[0005] In view of the above-mentioned disadvantages of the prior art, the purpose of the present invention is to provide an electric power construction operation platform to solve the problem of poor stability of the operation platform for electric power construction in the working environment with a sloping terrain such as mountains in the prior art.

[0006] To achieve the above purpose and other related purposes, the present invention provides an electric power construction operation platform, including: a platform main body, two reinforcement devices, a balance device, an expansion device, and an anti-falling device;

[0007] The platform main body includes a mobile base, and a scissor lift is arranged at the upper end of the mobile base, and an operation table is arranged at the upper end of the scissor lift;

[0008] The two reinforcement devices are respectively arranged at both ends of the mobile base, and each reinforcement device includes a telescopic part, a plurality of lifting parts, and a fixing part which are distributed in sequence from top to bottom;

[0009] The balance device is arranged at the inner bottom of the operating table and is used to adjust the balance of the operating table;

[0010] The expansion device is arranged at both ends of the operating table and is used to expand the storage space of the operating table;

[0011] The anti-falling device is arranged at the upper edge of the operating table and is used to bind external construction tools to prevent them from falling off the operating table.

[0012] Preferably, the telescopic part includes two cross bars. On the opposite sides of the two cross bars, a number of telescopic sub-rods and a number of telescopic mother-rods are respectively connected. One end of each telescopic sub-rod extends into the corresponding telescopic mother-rod and can slide up and down along the telescopic mother-rod. A number of through holes are provided on each telescopic sub-rod and telescopic mother-rod. A locking rod matching the through holes is also provided between the two cross bars. The locking rod can horizontally pass through all the telescopic sub-rods and telescopic mother-rods. A fixing rod is provided on the locking rod and the fixing rod passes through the locking rod and is perpendicular to the locking rod.

[0013] Preferably, each lifting part includes a bidirectional screw rod. The two ends of the bidirectional screw rod penetrate and are threadedly connected with moving blocks. Each moving block is connected with two symmetric struts. The two struts on the same side of each two moving blocks are connected with the same connecting block. A U-shaped handle is connected between adjacent bidirectional screw rods.

[0014] Preferably, the fixing part includes a bottom rod. The lower end of the bottom rod is rotatably connected with a pedal. A number of insertion rods are provided at the lower end of the pedal. A number of notches are provided on the pedal.

[0015] Preferably, the balance device includes an inclination sensor arranged at the bottom of the operating table. Two mutually perpendicular but non-intersecting unidirectional screw rods are arranged inside the operating table. The end of each unidirectional screw rod extends to the outer side wall of the operating table and is connected with a motor. Each unidirectional screw rod penetrates through a sliding rod. The two sliding rods jointly penetrate through an installation block. A counterweight block is connected to the lower end of the installation block.

[0016] Preferably, the two unidirectional screw rods are both close to the inner side wall of the operating table and are parallel to the corresponding ones. Each sliding rod is perpendicular to the corresponding unidirectional screw rod. And the two ends of each sliding rod are connected with the inner side wall of the operating table and can slide along the inner side wall. A number of balls are provided at the bottom of the counterweight block. The lower part of the balls contacts the inner bottom of the operating table.

[0017] Preferably, the expansion device includes expansion plates respectively arranged at both ends of the operating table. The outer end of the expansion plate is connected with a fence one. Both ends of the fence one are connected with a fence two;

[0018] Four columns are provided at the four corners of the upper end of the operating table. An electronic lock is installed on the outer side wall of each column. An inductor matching the electronic lock is provided on the outer side wall of each second fence. Locking devices are provided between the two ends of each extension board and the two columns.

[0019] Preferably, a door panel is provided between adjacent columns. Tilted plates are rotatably connected to the outer ends of the operating table on both sides of the two door panels. A soft pad is provided at the top of the outer side wall of the tilted plate.

[0020] Preferably, the anti-falling device includes an annular guide rail provided on the upper surface of the operating table. A slider is provided in the annular guide rail. The slider can slide in the annular guide rail. The upper end of the slider is connected to a bracket. The upper part of the bracket is connected to a placement box. A suspension rod is connected to the upper part of the bracket above the placement box. A number of elastic pull ropes are connected to the suspension rod. The elastic pull ropes are used to bind external construction tools.

[0021] Preferably, two rotating rings are sleeved on the upper part of the bracket. The two rotating rings are detachably connected to the placement box and the suspension rod respectively. The placement box matches the suspension rod.

[0022] As described above, a power construction operation platform disclosed by the present invention has the following beneficial effects:

[0023] 1. By setting a reinforcement device in the present invention, when the equipment is on a slope, the locking rod is pulled out to make the telescopic female rod naturally descend, so that the fixing part contacts the ground. The telescopic part is slightly inclined outward. The pedal is stepped on through the notch, and the insertion rod is inserted into the soil. All telescopic sub-rods and telescopic female rods are locked by the locking rod. The U-shaped handle is rotated to drive the two bidirectional screws to rotate. Then, through the moving block, the support rod and the connecting block, the telescopic part and the fixing part are moved away from each other, so as to lift one side of the moving base and keep the moving base horizontal, improving the stability of the power construction operation platform on the slope and avoiding tipping over.

[0024] 2. When the storage space of the operating table in the present invention is not enough to place all power construction materials, the extension board is opened and laid flat, the first fence is erected, and then the second fence is rotated so that the included angle between the first fence and the second fence is 90 degrees. The side of the second fence is close to the side of the column. After the electronic lock with an inductor senses and identifies, the lock head of the electronic lock is inserted into the second fence, so as to lock the extension board, the first fence and the second fence, thereby increasing the storage space of the operating table and facilitating the placement of more construction materials.

[0025] 3. When the present invention uses a crane to obtain materials during the operation of the operating platform, the inclination angle of the operating platform is monitored in real time by an inclination sensor. When the inclination angle of the operating platform exceeds the preset range, two motors are used to control the rotation of two one-way screws respectively, and then the one-way screws push the corresponding sliding rods to translate inside the operating platform, thereby driving the installation block to translate inside the operating platform. The installation block drives the counterweight to move, adjusts the center of gravity position of the operating platform, keeps the operating platform balanced, improves the stability and safety of the equipment, and avoids the equipment from tipping over.

[0026] 4. In the present invention, the construction tools are bound with elastic ropes and placed in the placement box. During construction, the bracket is moved according to the construction orientation, so that the slider slides along the annular guide rail, driving the bracket to move to the power construction position. During construction, the tools used are taken out of the placement box, and the tools are moved to the construction position for operation. The elastic ropes are stretched. After the tools are released, the tools will be restrained by the elastic ropes and will not fall outside the operating platform, which is beneficial to preventing the construction tools from falling and improves the safety.

[0027] Therefore, the present invention effectively overcomes various disadvantages in the prior art and has high industrial utilization value. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It shows a perspective view of a power construction operating platform of the present invention.

[0029] Figure 2 It shows a perspective view of a reinforcement device of a power construction operating platform of the present invention.

[0030] Figure 3 It shows a separated view of a reinforcement device of a power construction operating platform of the present invention.

[0031] Figure 4 It shows a perspective view of a lifting part of a power construction operating platform of the present invention.

[0032] Figure 5 It shows a connection structure diagram of the operating platform of a power construction operating platform of the present invention.

[0033] Figure 6 It shows a bottom perspective view of the operating platform of a power construction operating platform of the present invention.

[0034] Figure 7 It shows an internal structure diagram of the operating platform of a power construction operating platform of the present invention.

[0035] Figure 8 It shows a perspective view of an installation block of a power construction operating platform of the present invention.

[0036] Figure 9 It shows a power construction operating platform of the present inventionFigure 5 Enlarged view of part A

[0037] Figure 10 Shown is a perspective view of the anti-falling device of a power construction operation platform according to the present invention

[0038] Figure 11 Shown is a perspective view of the placement box of a power construction operation platform according to the present invention

[0039] Description of component labels

[0040] 1. Platform main body; 2. Reinforcement device; 3. Balancing device; 4. Expansion device; 5. Anti-falling device;

[0041] 10. Mobile base; 11. Scissor lift; 12. Operating platform;

[0042] 120. Support pillar; 121. Electronic lock; 122. Lock; 123. Ring-shaped guide rail; 124. Door panel; 125. Tilt plate; 126. Soft pad;

[0043] 20. Telescopic part; 21. Lifting part; 22. Fixed part;

[0044] 200. Cross bar; 201. Telescopic sub-bar; 202. Telescopic mother-bar; 203. Perforation; 204. Locking bar; 205. Fixed bar;

[0045] 210. Bi-directional screw; 211. Moving block; 212. Support rod; 213. Connecting block; 214. U-shaped handle;

[0046] 220. Bottom bar; 221. Pedal; 222. Insert rod; 223. Notch;

[0047] 30. Tilt angle sensor; 31. Unidirectional screw; 32. Motor; 33. Slide bar; 34. Mounting block; 35. Counterweight;

[0048] 36. Ball;

[0049] 40. Expansion board; 41. Fence one; 42. Fence two;

[0050] 50. Slide block; 51. Bracket; 52. Placement box; 53. Suspension rod; 54. Pulling rope;

[0051] 510. Swivel ring; Specific embodiments

[0052] The following specific embodiments illustrate the implementation manners of the present invention. Those skilled in the art can easily understand the other advantages and effects of the present invention from the content disclosed in this specification

[0053] Please refer to Figures 1 to 11It should be noted that the structures, proportions, sizes, etc. shown in the drawings of this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read, and are not used to limit the conditions under which the present invention can be implemented. Therefore, they do not have any technical substance. Any modification of the structure, change in the proportional relationship, or adjustment of the size, without affecting the efficacy that the present invention can produce and the purpose that can be achieved, should still fall within the scope that can be covered by the technical content disclosed in the present invention. At the same time, the terms such as "upper", "lower", "left", "right", "middle", and "one" cited in this specification are only for the convenience of clear narration and are not used to limit the scope within which the present invention can be implemented. The change or adjustment of their relative relationship, without substantial change in the technical content, should also be regarded as the scope within which the present invention can be implemented.

[0054] As Figures 1 - 11 shown, the present invention provides a power construction operation platform, including: a platform main body 1, two reinforcement devices 2, a balance device 3, an expansion device 4, and a fall prevention device 5.

[0055] The platform main body 1 includes a mobile base 10. The upper end of the mobile base 10 is provided with a scissor lift 11, and the upper end of the scissor lift 11 is provided with an operation table 12. This structure is the main structure of an existing power construction operation platform. The equipment is moved to the lower part of the power position through the mobile base 10, and then the operation table 12 is lifted to the same height as the power construction through the scissor lift 11, enabling the operator to perform power construction operations.

[0056] The two reinforcement devices 2 are respectively arranged at both ends of the mobile base 10. Each reinforcement device 2 includes a telescopic part 20, a plurality of lifting parts 21, and a fixing part 22 that are distributed in sequence from top to bottom. The upper end of the telescopic part 20 is rotatably connected to the side of the mobile base 10, and the telescopic part 20 can rotate around the long side of the mobile base 10. When the equipment is moved to a sloped position, the reinforcement device 2 will be affected by gravity, with one side perpendicular to the ground. Adjust the telescopic part 20 to lower the lifting part 21 and the fixing part 22, and insert the fixing part 22 into the soil, lock the telescopic part 20, and adjust the lifting part 21 to lift the side of the mobile base 10 through the telescopic part 20, gradually adjusting the mobile base 10 to a horizontal state.

[0057] The balance device 3 is arranged at the inner bottom of the operation table 12 for adjusting the balance of the operation table 12.

[0058] The expansion device 4 is arranged at both ends of the operation table 12 for expanding the storage space of the operation table 12.

[0059] The fall prevention device 5 is arranged at the upper edge of the operation table 12 for binding external construction tools to prevent them from falling off the operation table 12.

[0060] In one embodiment, please refer toFigure 3 , the telescopic part 20 includes two cross bars 200, and the upper cross bar 200 is rotatably connected to the side of the moving base 10. A number of telescopic sub-rods 201 and a number of telescopic mother-rods 202 are respectively connected to the opposite sides of the two cross bars 200. One end of each telescopic sub-rod 201 extends into the corresponding telescopic mother-rod 202 and can slide up and down along the telescopic mother-rod 202. The distance between the two cross bars 200 is adjusted by the relative sliding between the telescopic sub-rod 201 and the telescopic mother-rod 202. A number of through holes 203 are provided on each telescopic sub-rod 201 and telescopic mother-rod 202, and a locking rod 204 matching the through holes 203 is also provided between the two cross bars 200. The locking rod 204 can horizontally pass through all the telescopic sub-rods 201 and telescopic mother-rods 202. By passing the locking rod 204 through the through holes 203 of the telescopic mother-rod 202 and the telescopic sub-rod 201, the telescopic sub-rod 201 and the telescopic mother-rod 202 are fixed, and thus the distance between the two cross bars 200 is locked. The locking rod 204 can be set to a number of pieces to enhance the compressive capacity and prevent the locking rod 204 from breaking due to the load exceeding the pressure range. A fixing rod 205 is provided on the locking rod 204 and the fixing rod 205 passes through the locking rod 204 and is perpendicular to the locking rod 204. After the locking rod 204 locks the telescopic sub-rod 201 and the telescopic mother-rod 202, the fixing rod 205 is inserted into the locking rod 204 to limit the movement range of the locking rod 204 and prevent the locking rod 204 from falling off. The fixing rod 205 can be set to two pieces, and the distance between the two fixing rods 205 can be set to be slightly larger than the outer diameter of the telescopic mother-rod 202 to position the locking rod 204 from both ends of a single telescopic mother-rod 202, so that the locking rod 204 cannot be translated, improving the stability of the structure.

[0061] In one embodiment, please refer to Figures 3 - 4 , each lifting part 21 includes a bidirectional screw 210. The number of lifting parts 21 can be set to one or more. In this drawing, it is set to two, that is, there are two bidirectional screws 210. Both ends of the bidirectional screw 210 penetrate and are threadedly connected with moving blocks 211. Each moving block 211 is connected with two symmetric struts 212. The two struts 212 on the same side of each two moving blocks 211 are connected to the same connecting block 213. The two ends of the strut 212 are respectively rotatably connected with the moving block 211 and the connecting block 213. The upper connecting block 213 is connected to the lower cross bar 200. A U-shaped handle 214 is connected between adjacent bidirectional screws 210, so that adjacent bidirectional screws 210 can rotate synchronously through the U-shaped handle 214. When in use, by rotating the U-shaped handle 214, the two bidirectional screws 210 are driven to rotate. Each bidirectional screw 210 controls the corresponding moving blocks 211 at both ends to move towards the center of the bidirectional screw 210, thereby changing the inclination angle of the strut 212, playing a role in lifting the telescopic part 20, and further lifting the lower side of the moving base 10 to make the moving base 10 adjust smoothly.

[0062] In one embodiment, please refer to Figure 3 , the fixing part 22 includes a bottom rod 220. The lower end of the bottom rod 220 is rotatably connected to a pedal 221. A plurality of insertion rods 222 are provided at the lower end of the pedal 221, and a plurality of notches 223 are provided on the pedal 221. Construction workers can step on the pedal 221 through the notches 223 to insert the insertion rods 222 into the soil, so that the pedal 221 is fixed to the ground, providing a fixed support point for the telescopic part 20 and the lifting part 21.

[0063] In one embodiment, please refer to Figures 5 - 8 , the balancing device 3 includes an inclination sensor 30 provided at the bottom of the operating platform 12. The inclination sensor 30 can be used to monitor the inclination angle of the operating platform 12 in real time. Usually, a small crane is externally connected to the operating platform 12 for material hoisting, and the lifting tool of the crane will extend to the outside of the operating platform 12. During the process of hoisting materials, affected by gravity, the operating platform 12 will tilt to a certain extent, which is risky. Two mutually perpendicular but non-intersecting one-way screws 31 are provided inside the operating platform 12. The end of each one-way screw 31 extends to the outer side wall of the operating platform 12 and is connected to a motor 32. Each one-way screw 31 penetrates through a slide rod 33, and the two slide rods 33 jointly penetrate through an installation block 34. A counterweight 35 is connected to the lower end of the installation block 34. During the process of hoisting materials, the two motors 32 are respectively controlled to rotate the two one-way screws 31, and then the one-way screws 31 push the corresponding slide rods 33 to translate inside the operating platform 12, thereby driving the installation block 34 to translate inside the operating platform 12. The installation block 34 drives the counterweight 35 to move, adjusts the center of gravity position of the operating platform 12, and balances the inclination angle of the operating platform 12. This structure adjusts the angle of the operating platform 12 by controlling the change of the center of gravity position of the operating platform 12, keeps the operating platform 12 stable, improves the stability and safety of the equipment, and avoids the equipment from tipping over.

[0064] In one embodiment, please refer to Figures 5 - 8 , both of the two one-way screws 31 are close to the inner side wall of the operating platform 12 and are parallel to the corresponding ones, so as to avoid the one-way screws 31 hindering the movement path of the installation block 34. Each slide rod 33 is perpendicular to the corresponding one-way screw 31, and the plane formed by each one-way screw 31 and the corresponding slide rod 33 is parallel to the top plane of the operating platform 12. And both ends of each slide rod 33 are connected to the inner side wall of the operating platform 12 and can slide along the inner side wall. A plurality of balls 36 are provided at the bottom of the counterweight 35, and the lower part of the balls 36 is in contact with the inner bottom of the operating platform 12. The counterweight 35 has a certain weight, and the balls 36 are used to reduce the friction of the counterweight 35 during the movement process, making the counterweight 35 move more flexibly.

[0065] In one embodiment, please refer to Figure 5 and Figure 9, the expansion device 4 includes expansion boards 40 respectively arranged at both ends of the operation table 12. The expansion boards 40 serve as two side walls of the operation table 12 and are rotatably connected to the operation table 12. The outer ends of the expansion boards 40 are connected with a first fence 41, and both ends of the first fence 41 are connected with a second fence 42. When the storage space of the operation table 12 is not sufficient to place all the electric power construction materials, the expansion boards 40 are opened and laid flat, the first fence 41 is erected, and then the second fence 42 is rotated so that the included angle between the first fence 41 and the second fence 42 is 90 degrees, connecting with the other two sides of the operation table 12, achieving the effect of expanding the storage space of the operation table 12.

[0066] Four corners at the upper end of the operation table 12 are respectively provided with columns 120. Electronic locks 121 are installed on the outer side walls of the columns 120. Sensors matching the electronic locks 121 are respectively provided on the outer side walls of each second fence 42. Locking devices 122 are respectively arranged between both ends of each expansion board 40 and the two columns 120. After the second fence 42 is unfolded, the side of the second fence 42 is close to the side of the column 120. After being sensed and identified by the electronic lock 121 with a sensor, the lock head of the electronic lock 121 is inserted into the second fence 42, thereby locking the expansion board 40, the first fence 41 and the second fence 42.

[0067] In one embodiment, please refer to Figure 5 and Figure 9 , a door panel 124 is arranged between adjacent columns 120. Both sides of the operation table 12 can be opened for material transportation. Tilt plates 125 are respectively rotatably connected to the outer ends of the two door panels 124 of the operation table 12. Soft pads 126 are arranged at the top of the outer side walls of the tilt plates 125. After the tilt plates 125 are put down, the other ends of the tilt plates 125 are in contact with the ground, forming an inclined channel, facilitating the transportation of materials into the operation table 12. The soft pads 126 are used to reduce the vibration impact generated when the tilt plates 125 are put down and contact the ground, and prolong the service life of the tilt plates 125.

[0068] In one embodiment, please refer to Figure 5 and Figures 10 - 11, the anti-drop device 5 includes an annular guide rail 123 provided on the upper surface of the operation table 12. A slider 50 is provided inside the annular guide rail 123. The slider 50 can slide inside the annular guide rail 123. The upper end of the slider 50 is connected to a bracket 51. The upper part of the bracket 51 is connected to a placement box 52. The upper end of the bracket 51 where the placement box 52 is located is connected to a suspension rod 53. A number of elastic ropes 54 are connected to the suspension rod 53. The elastic ropes 54 are used to bind external construction tools. During use, according to the location of the electrical construction, move the bracket 51 to make the slider 50 slide along the annular guide rail 123, drive the bracket 51 to move to the electrical construction location. After the construction tools are bound by the elastic ropes 54, place them in the placement box 52. When constructing, take out the tools used. After the tool slips out of the hand, the tool will be restrained by the elastic ropes 54 and will not fall outside the operation table 12. This structure is beneficial to preventing construction tools from falling and improves safety.

[0069] In one embodiment, please refer to Figure Figure 5 and Figures 10 - 11 , two swivel rings 510 are sleeved on the upper part of the bracket 51. The two swivel rings 510 are respectively detachably connected to the placement box 52 and the suspension rod 53. The swivel rings 510 can rotate around the bracket 51 as the center, facilitating the angles of the suspension rod 53 and the placement box 52, and increasing the flexibility of use. The placement box 52 matches the suspension rod 53. After removing the placement box 52 and the suspension rod 53, snap the placement box 52 and the suspension rod 53 together and lock them with an external buckle, which is convenient for transporting construction tools. The size of the placement box 52 is designed in different specifications according to actual application requirements and the styles of construction tools.

[0070] The specific use process of the present invention is as follows:

[0071] When the moving base 10 is on the slope, the reinforcement device 2 on its lower side is affected by gravity and remains vertically downward. Remove the fixing rod 205 and then pull out the locking rod 204. Under the action of gravity, the telescopic female rod 202 descends, making the fixing part 22 contact the ground. Slightly tilt the telescopic part 20 outward. Through the notch 223, step on the pedal 221 to insert the insertion rod 222 into the soil until the bottom of the pedal 221 contacts the ground. Insert the locking rod 204 into all the telescopic sub-rods 201 and the telescopic female rod 202 to lock the telescopic sub-rods 201 and the telescopic female rod 202, and then fix the locking rod 204 with the fixing rod 205 to lock the entire telescopic part 20. Then rotate the U-shaped handle 214 to drive the two bidirectional screws 210 to rotate. Each bidirectional screw 210 controls the corresponding moving blocks 211 at both ends to move towards the center of the bidirectional screw 210, thereby changing the inclination angle of the support rod 212, making the telescopic part 20 and the fixing part 22 move away from each other, so as to lift one side of the moving base 10 and keep the moving base 10 horizontal, improving the stability of the operation platform for electrical construction on the slope and avoiding tipping over;

[0072] When the storage space of the operation table 12 is not sufficient to place all the electric power construction materials, open and lay flat the extension board 40, erect the fence one 41, and then rotate the fence two 42 so that the included angle between the fence one 41 and the fence two 42 is 90 degrees. The side of the fence two 42 is close to the side of the support column 120. After being sensed and identified by the sensor-equipped electronic lock 121, the lock head of the electronic lock 121 is inserted into the fence two 42, thereby locking the extension board 40, the fence one 41, and the fence two 42, thus increasing the storage space of the operation table 12 and facilitating the placement of more construction materials;

[0073] The operation table 12 is lifted to the construction height by the scissor lift 11. According to the construction orientation, the support 51 is moved so that the slider 50 slides along the annular guide rail 123, driving the support 51 to move to the electric power construction position. The construction tools are bound by the elastic draw rope 54 and placed in the placement box 52. During construction, the tools used are taken out from the placement box 52 and moved to the construction position for operation. The elastic draw rope 54 is stretched. After the tool slips out of the hand, the tool will be restrained by the elastic draw rope 54 and will not fall outside the operation table 12, which is beneficial to preventing the construction tools from falling and improving safety;

[0074] After the operation table 12 is lifted to a high place and there is a shortage of construction materials, usually a crane is used to lift the materials from the ground and transport them to the operation table 12. At the same time, the operation table 12 may be tilted due to the weight of the lifted materials. According to the tilt angle sensor 30, the tilt angle of the operation table 12 is monitored in real time. When the tilt angle of the operation table 12 exceeds the preset range, two motors 32 are used to control the rotation of two single-direction screws 31 respectively. Then, the single-direction screws 31 push the corresponding sliding rods 33 to translate inside the operation table 12, thereby driving the mounting blocks 34 to translate inside the operation table 12. The mounting blocks 34 drive the counterweight blocks 35 to move, adjusting the center of gravity position of the operation table 12 to keep the operation table 12 balanced. After the operation table 12 is extended, when placing construction materials and the operation table 12 is tilted, the same method can be used for adjustment, improving the stability and safety of the equipment and avoiding the equipment from tipping over.

[0075] Therefore, the present invention effectively overcomes various disadvantages in the prior art and has high industrial utilization value.

[0076] The above embodiments are only illustrative of the principles and effects of the present invention, and are not used to limit the present invention. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or changes made by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present invention should still be covered by the claims of the present invention.

Claims

1. An electric power construction operation platform, characterized in that: include: A platform body (1), two reinforcement devices (2), a balancing device (3), an expansion device (4) and an anti-fall device (5); The platform body (1) comprises a mobile base (10), a scissor-type lift (11) is provided at the upper end of the mobile base (10), and an operating platform (12) is provided at the upper end of the scissor-type lift (11); The two reinforcement devices (2) are respectively arranged at two ends of the mobile base (10), and each reinforcement device (2) comprises a telescopic part (20), a plurality of lifting parts (21) and a fixing part (22) which are sequentially distributed from top to bottom; The balancing device (3) is arranged on the inner bottom of the operating table (12) and is used to adjust the balance of the operating table (12); The expansion device (4) is arranged at two ends of the operating table (12) and is used to expand the storage space of the operating table (12); The anti-fall device (5) is arranged on the upper edge of the operating platform (12) and is used to bind external construction tools to prevent them from falling from the operating platform (12).

2. The electric power construction operation platform according to claim 1, characterized in that: The telescopic portion (20) comprises two cross bars (200), and the opposite sides of the two cross bars (200) are respectively connected with a plurality of telescopic sub-bars (201) and a plurality of telescopic mother bars (202), one end of each telescopic sub-bar (201) extends into the interior of the corresponding telescopic mother bar (202) and can slide up and down along the telescopic mother bar (202), each telescopic sub-bar (201) and the telescopic mother bar (202) are provided with a plurality of through holes (203), and a locking rod (204) matching the through holes (203) is further provided between the two cross bars (200), and the locking rod (204) can horizontally pass through all the telescopic sub-bars (201) and the telescopic mother bar (202), and a fixing rod (205) is provided on the locking rod (204), and the fixing rod (205) passes through the locking rod (204) and is perpendicular to the locking rod (204).

3. The electric power construction operation platform according to claim 1, characterized in that: Each lifting part (21) comprises a bidirectional screw rod (210), both ends of the bidirectional screw rod (210) are penetrated and threadedly connected with a moving block (211), each moving block (211) is connected to two symmetrical support rods (212), the two support rods (212) on the same side of each two moving blocks (211) are connected to the same connecting block (213), and a U-shaped handle (214) is connected between adjacent bidirectional screw rods (210).

4. The electric power construction operation platform according to claim 1, characterized in that: The fixing portion (22) comprises a bottom rod (220), the lower end of the bottom rod (220) is rotatably connected to a pedal (221), a plurality of insertion rods (222) are provided at the lower end of the pedal (221), and a plurality of notches (223) are provided on the pedal (221).

5. The electric power construction operation platform according to claim 1, characterized in that: The balancing device (3) comprises an inclination sensor (30) arranged at the bottom of an operating table (12); two mutually perpendicular but non-intersecting one-way screws (31) are arranged inside the operating table (12); the end of each one-way screw (31) extends to the outer wall of the operating table (12) and is connected to a motor (32); each one-way screw (31) passes through a sliding rod (33); the two sliding rods (33) pass through a mounting block (34) together; the lower end of the mounting block (34) is connected to a counterweight block (35).

6. The electric power construction operation platform according to claim 5, characterized in that: The two one-way screw rods (31) are close to the inner side wall of the operating table (12) and are parallel to the corresponding one-way screw rods (31), and each of the sliding rods (33) is perpendicular to the corresponding one-way screw rod (31), and both ends of each of the sliding rods (33) are connected to the inner side wall of the operating table (12) and can slide along the inner side wall, and a plurality of balls (36) are provided at the bottom of the counterweight block (35), and the bottom of the balls (36) is in contact with the inner bottom of the operating table (12).

7. The electric power construction operation platform according to claim 1, characterized in that: The expansion device (4) comprises expansion plates (40) respectively arranged at two ends of the operating platform (12), the outer ends of the expansion plates (40) are connected to fence one (41), and both ends of the fence one (41) are connected to fence two (42); The four corners of the upper end of the operating table (12) are provided with pillars (120), and the outer side walls of the pillars (120) are installed with electronic locks (121). The outer side walls of each fence (42) are provided with sensors matching the electronic locks (121), and locks (122) are provided between the two ends of each expansion board (40) and the two pillars (120).

8. The electric power construction operation platform according to claim 7, characterized in that: Door panels (124) are provided between adjacent pillars (120), and the operating platform (12) is rotatably connected to inclined plates (125) at the outer ends of the two door panels (124), and a soft cushion (126) is provided on the top of the outer side wall of the inclined plate (125).

9. The electric power construction operation platform according to claim 1, characterized in that: The anti-fall device (5) comprises an annular guide rail (123) arranged on the upper surface of the operating table (12), a slider (50) is arranged in the annular guide rail (123), and the slider (50) can slide in the annular guide rail (123), the upper end of the slider (50) is connected to a bracket (51), the upper part of the bracket (51) is connected to a placement box (52), the upper end of the bracket (51) located on the placement box (52) is connected to a suspension rod (53), and the suspension rod (53) is connected to a plurality of elastic pull ropes (54), and the elastic pull ropes (54) are used to bind external construction tools.

10. The electric power construction operation platform according to claim 9, characterized in that: Two rotating rings (510) are sleeved on the upper part of the bracket (51), and the two rotating rings (510) are detachably connected to the placement box (52) and the suspension rod (53) respectively, and the placement box (52) matches the suspension rod (53).